Shiba Tomoaki, Sugiyama Tetsuya, Hori Yuichi, Matsumoto Tadashi, Maeno Takatoshi, Takahashi Mao
Department of Ophthalmology, School of Medicine, Toho University, 6-11-1, Omori-Nishi, Ota-ku, Tokyo, 143-8541, Japan.
Nakano Eye Clinic of Kyoto Medical Co-operative, 2, Kyoto, Japan.
Graefes Arch Clin Exp Ophthalmol. 2016 Jun;254(6):1033-9. doi: 10.1007/s00417-015-3145-5. Epub 2015 Sep 2.
To evaluate relationships between optic nerve head (ONH) circulation by laser speckle flowgraphy (LSFG), and secretion levels of plasma norepinephrine (NE), plasma renin activity (PRA), plasma aldosterone concentration (PAC), and plasma cortisol.
Forty subjects were included in the study. The mean blur rates (MBR) throughout the ONH (MBR-all), in the tissue (MBR-tissue), and in vessels (MBR-vessel) were analyzed. In 29 subjects the following parameters were evaluated: plasma NE and ONH circulation in the evening and morning (Δ plasma NE, Δ MBR-all, -tissue, -vessel, and Δ area ratio of blood stream).
Plasma NE was significantly correlated with MBR-all (r = 0.39, P = 0.01) and MBR-vessel (r = 0.51, P = 0.0008). Plasma cortisol was significantly correlated with MBR-vessel (r =0.35, P = 0.03). The PRA (r = 0.31, P = 0.05) and PAC (r = 0.31, P = 0.05) tended to correlate with MBR-vessel. The multiple regression analysis revealed that plasma NE, PAC, and ocular perfusion pressure (OPP) were identified as factors contributing independently to the MBR-vessel (plasma NE: standard regression = 0.48, t-value = 3.12, P = 0.004; PAC: 0.43, 3.10, 0.04; OPP: 0.58, 2.34, 0.03, r = 0.71). Positive correlations between Δ plasma NE and Δ MBR-all (r = 0.46, P = 0.01), Δ MBR-tissue (0.38, 0.04), Δ MBR-vessel (0.41, 0.03), and Δ area ratio of blood stream (0.38, 0.04) were observed.
Our results clarified that the measurements of ONH circulation by LSFG is reflecting the plasma secretion levels of vasoactive mediators.
通过激光散斑血流图(LSFG)评估视神经乳头(ONH)循环与血浆去甲肾上腺素(NE)、血浆肾素活性(PRA)、血浆醛固酮浓度(PAC)和血浆皮质醇分泌水平之间的关系。
40名受试者纳入本研究。分析了整个ONH的平均模糊率(MBR)(MBR-all)、组织中的平均模糊率(MBR-tissue)和血管中的平均模糊率(MBR-vessel)。对29名受试者评估了以下参数:早晚的血浆NE和ONH循环(Δ血浆NE、ΔMBR-all、-tissue、-vessel以及血流面积比的变化量)。
血浆NE与MBR-all显著相关(r = 0.39,P = 0.01)以及与MBR-vessel显著相关(r = 0.51,P = 0.0008)。血浆皮质醇与MBR-vessel显著相关(r = 0.35,P = 0.03)。PRA(r = 0.31,P = 0.05)和PAC(r = 0.31,P = 0.05)倾向于与MBR-vessel相关。多元回归分析显示,血浆NE、PAC和眼灌注压(OPP)被确定为独立影响MBR-vessel的因素(血浆NE:标准回归系数 = 0.48,t值 = 3.12,P = 0.004;PAC:0.43,3.10,0.04;OPP:0.58,2.34,0.03,r = 0.71)。观察到Δ血浆NE与ΔMBR-all(r = 0.46,P = 0.01)、ΔMBR-tissue(0.38,0.04)、ΔMBR-vessel(0.41,0.03)和血流面积比的变化量(0.38,0.04)之间呈正相关。
我们的结果表明,通过LSFG测量ONH循环反映了血管活性介质的血浆分泌水平。